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25-hydroxyvitamin D3 and 125-dihydroxyvitamin D3 exert distinct effects on human skeletal muscle function and gene expression

机译:25-羟基维生素D3和125-二羟基维生素D3对人体骨骼肌功能和基因表达产生明显影响

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摘要

Age-associated decline in muscle function represents a significant public health burden. Vitamin D-deficiency is also prevalent in aging subjects, and has been linked to loss of muscle mass and strength (sarcopenia), but the precise role of specific vitamin D metabolites in determining muscle phenotype and function is still unclear. To address this we quantified serum concentrations of multiple vitamin D metabolites, and assessed the impact of these metabolites on body composition/muscle function parameters, and muscle biopsy gene expression in a retrospective study of a cohort of healthy volunteers. Active serum 1,25-dihydroxyvitamin D3 (1α,25(OH)2D3), but not inactive 25-hydroxyvitamin D3 (25OHD3), correlated positively with measures of lower limb strength including power (rho = 0.42, p = 0.02), velocity (Vmax, rho = 0.40, p = 0.02) and jump height (rho = 0.36, p = 0.04). Lean mass correlated positively with 1α,25(OH)2D3 (rho = 0.47, p = 0.02), in women. Serum 25OHD3 and inactive 24,25-dihydroxyvitamin D3 (24,25(OH)2D3) had an inverse relationship with body fat (rho = -0.30, p = 0.02 and rho = -0.33, p = 0.01, respectively). Serum 25OHD3 and 24,25(OH)2D3 were also correlated with urinary steroid metabolites, suggesting a link with glucocorticoid metabolism. PCR array analysis of 92 muscle genes identified vitamin D receptor (VDR) mRNA in all muscle biopsies, with this expression being negatively correlated with serum 25OHD3, and Vmax, and positively correlated with fat mass. Of the other 91 muscle genes analysed by PCR array, 24 were positively correlated with 25OHD3, but only 4 were correlated with active 1α,25(OH)2D3. These data show that although 25OHD3 has potent actions on muscle gene expression, the circulating concentrations of this metabolite are more closely linked to body fat mass, suggesting that 25OHD3 can influence muscle function via indirect effects on adipose tissue. By contrast, serum 1α,25(OH)2D3 has limited effects on muscle gene expression, but is associated with increased muscle strength and lean mass in women. These pleiotropic effects of the vitamin D ‘metabolome’ on muscle function indicate that future supplementation studies should not be restricted to conventional analysis of the major circulating form of vitamin D, 25OHD3.
机译:与年龄相关的肌肉功能下降代表了巨大的公共卫生负担。维生素D缺乏症在老年受试者中也很普遍,并且与肌肉质量和强度的丧失(肌肉减少症)有关,但是尚不清楚特定维生素D代谢物在确定肌肉表型和功能中的确切作用。为了解决这个问题,我们对一组健康志愿者进行了回顾性研究,定量了多种维生素D代谢物的血清浓度,并评估了这些代谢物对人体成分/肌肉功能参数和肌肉活检基因表达的影响。活性血清1,25-二羟基维生素D3(1α,25(OH)2D3),而非无活性25-羟基维生素D3(25OHD3),与下肢力量包括力量(rho = 0.42,p = 0.02),速度的测量呈正相关(Vmax,rho = 0.40,p = 0.02)和跳跃高度(rho = 0.36,p = 0.04)。女性的瘦体重与1α,25(OH)2D3正相关(rho = 0.47,p = 0.02)。血清25OHD3和无活性的24,25-二羟基维生素D3(24,25(OH)2D3)与体内脂肪呈反比关系(rho = -0.30,p = 0.02和rho = -0.33,p = 0.01)。血清25OHD3和24,25(OH)2D3也与尿类固醇代谢产物相关,提示与糖皮质激素代谢有关。对92个肌肉基因的PCR阵列分析确定了所有肌肉活检组织中的维生素D受体(VDR)mRNA,该表达与血清25OHD3和Vmax呈负相关,与脂肪量呈正相关。通过PCR阵列分析的其他91个肌肉基因中,有24个与25OHD3正相关,但只有4个与活性1α,25(OH)2D3相关。这些数据表明,尽管25OHD3对肌肉基因表达具有有效作用,但这种代谢产物的循环浓度与人体脂肪量更为紧密相关,这表明25OHD3可以通过间接作用于脂肪组织而影响肌肉功能。相反,血清1α,25(OH)2D3对肌肉基因表达的作用有限,但与女性的肌肉力量和瘦体重有关。维生素D“代谢组”对肌肉功能的多效性作用表明,未来的补充研究不应局限于对维生素D主要循环形式25OHD3的常规分析。

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